Automatic liquid supplementing type intelligent mask based on micro-current

By introducing a microcurrent mechanism and a detection mechanism into the smart mask, combined with a flexible sensor and a solenoid valve to regulate the amount of liquid replenished, the problem of uneven liquid replenishment in the mask is solved, achieving automatic and even liquid replenishment and skin protection, thus improving skincare effects and user experience.

CN120960058APending Publication Date: 2025-11-18SHENZHEN WANCHENTAI IND CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202511328751.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

Existing microcurrent-based automatic hydration smart masks cannot automatically adjust the amount of hydration according to the actual condition of the face, which may lead to excessive dryness or insufficient hydration in some areas, affecting the skin care effect and user experience.

Method used

Employing a microcurrent mechanism, detection mechanism, and adjustment mechanism, it uses a flexible electronic sensor to detect skin condition and combines a control board and solenoid valve to regulate the flow of essence, achieving precise hydration. In case of inflammation or wounds on the face or jawline, the mask portion can be separated to avoid contact and infection.

Benefits of technology

It enables automatic and even hydration of the mask, improving skincare effects, avoiding waste of essence and aggravation of skin inflammation, and enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120960058A_ABST
    Figure CN120960058A_ABST
Patent Text Reader

Abstract

The invention discloses an automatic liquid supplementing type intelligent mask based on micro-current, and relates to the technical field of cosmetics, the automatic liquid supplementing type intelligent mask comprises a mask main body, and a nose part is arranged at the central position of the upper surface of the mask main body. According to the automatic liquid supplementing type intelligent mask based on the micro-current, the shell is inserted above the base, the shell is rotated after the clamping block is inserted into the clamping groove, the clamping groove is clamped to the edge of the base, the base and the shell are connected together, the micro pump is started, essence in the liquid outlet box is pumped out through the liquid suction pipe and the flow dividing pipe, and then the essence in the liquid outlet box is pumped out through the flow dividing pipe. Essence is discharged into a third conveying pipe and an auxiliary pipe through a first liquid discharging pipe and a second liquid discharging pipe respectively, and after the third conveying pipe and the auxiliary pipe are filled with the essence, the third conveying pipe and the auxiliary pipe are straightened, so that the mask body, the face and the lower jaw are opened, a user can conveniently attach the mask body to the face, and the mask is convenient to use. And the effect of conveniently unfolding the facial mask is achieved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the field of cosmetic technology, and in particular to an automatic liquid supplementing intelligent mask based on micro-current. BACKGROUND

[0002] In recent years, mask technology has been widely used and rapidly developed in the skin care industry. From traditional cloth masks to modern capsule masks, gel masks, and innovative bio-fiber masks, the evolution of technology has made masks more effective. Modern masks not only focus on moisturizing and nourishing, but also combine anti-aging, whitening, and other multiple functions. With consumers' increasing demand for skin care effects, a variety of masks for different skin types and problems have appeared on the market. Technological progress has enabled active ingredients in masks to better penetrate the skin and improve skin care effects.

[0003] Modern automatic liquid supplementing intelligent masks based on micro-current use intelligent AI technology to carry out micro-current stimulation to improve the absorption of essence on the face and enhance skin care effects. However, such masks have some inconveniences during use. Since the time for delicate skin care is long, the amount of essence absorbed during skin care gradually decreases, and users need to manually supplement essence to maintain the effect of the mask (especially in dry winter environments). This process is not only tedious but also may result in uneven application, affecting the final skin care effect. Existing automatic liquid supplementing intelligent masks based on micro-current cannot automatically adjust the amount of liquid supplement according to the actual situation of the face, which may cause over-drying or insufficient liquid supplement in some areas. This lack of intelligent feedback and automatic adjustment not only reduces user experience but also limits the skin care effect of the product, which cannot meet the actual needs. SUMMARY

[0004] The present application discloses an automatic liquid supplementing intelligent mask based on micro-current, which aims to solve the technical problems in the technical background.

[0005] To achieve the above purpose, the present application adopts the following technical solutions: An automatic liquid supplementing intelligent mask based on micro-current, comprising a mask body, a nose portion is arranged at the center position of the upper surface of the mask body, two eye portions are arranged above the nose portion on the upper surface of the mask body, and a mouth portion is arranged at the bottom position of the nose portion on the upper surface of the mask body. A micro-current mechanism is installed on the lower surface of the mask body. The upper surface of the mask body is provided with an adjusting mechanism near the nose part, the adjusting mechanism comprises two face parts and a chin part, the face part or the chin part is separated from the mask body, the lower surface of the face part or the chin part is exposed to the air to avoid skin inflammation and contact with the mask, and the materials of the mask body, the face part and the chin part are pure cotton, silk, polyester and regenerated non-woven fabric. The upper surface of the mask body is provided with a detection mechanism above the eye part, the detection mechanism comprises a base, a shell and a plurality of flexible electronic sensors, the base is used for quickly installing the shell, the inside of the shell is fixedly connected with a liquid outlet box, the inside of the liquid outlet box is provided with essence liquid, and the plurality of flexible electronic sensors are used for detecting the skin state. The micro-current mechanism comprises a main silver wire layer arranged on the lower surface of the mask body, one end of the main silver wire layer is provided with an auxiliary silver wire layer, both ends of the main silver wire layer and the auxiliary silver wire layer are provided with a plurality of current pieces, the upper surface of the current piece is provided with two conductive pieces, one end of the conductive piece is provided with a conductive end, the other end of the conductive piece is provided with a plurality of electrodes, the upper surface of the conductive piece is provided with a liquid immersion layer, the edge of the base is provided with a conveying mechanism, the conveying mechanism comprises a second conveying pipe and a third conveying pipe, one end of the third conveying pipe is provided with a second separation shell, one end of the second conveying pipe is provided with a first separation shell, and the second conveying pipe and the third conveying pipe are used for conveying the essence liquid. One end of the second conveying pipe and the third conveying pipe is provided with a safety separation mechanism, the upper surface of the face part is provided with an auxiliary pipe, and the second conveying pipe and the third conveying pipe are communicated.

[0006] The adjusting mechanism further comprises a second quick release piece arranged at one end of the face part, a plurality of first separation openings are arranged at the edge of the face part, a plurality of second separation openings are arranged at the edge of the chin part, and two first quick release pieces are arranged at one end of the chin part.

[0007] When there is skin inflammation or a wound on the cheeks and lips of the user, in order to avoid the inflammation from being aggravated or the wound from being infected, the face part or the chin part is pulled and torn from the mask body by pulling the second quick release piece or the first quick release piece.

[0008] In a preferred scheme, the detection mechanism further comprises two clamping grooves arranged at the edge of the base, a first conductive piece and a second conductive piece are arranged on the upper surface of the base, a conductive block is arranged at the bottom of the shell, a mounting end is arranged at the center position of the upper surface of the base, a first liquid discharge pipe and a second liquid discharge pipe are inserted into the top of the mounting end, and two clamping blocks are arranged at the bottom of the shell.

[0009] The inside of the shell is provided with a micro pump, one side of the micro pump is inserted with a liquid suction pipe, one end of the liquid suction pipe extends into the inside of the liquid outlet tank, the inside top of the shell is provided with a control panel, one side of the liquid outlet tank is inserted with a liquid injection pipe, the bottom of the micro pump is inserted with a shunt pipe, the bottom of the shunt pipe is provided with two liquid outlets, and the two sides of the base are respectively inserted with wires, and the wires are respectively electrically connected with the first conductive sheet, the second conductive sheet and the plurality of flexible electronic sensors.

[0010] The liquid outlets are respectively provided with electromagnetic valves, the bottom of the shell is provided with a liquid outlet hole and a liquid outlet groove, one liquid outlet communicates with the liquid outlet hole, and the other liquid outlet communicates with the liquid outlet groove, the shell and the base are in contact, the second liquid discharge pipe is inserted into the liquid outlet hole, and the first liquid discharge pipe is inserted into the liquid outlet groove.

[0011] In a preferred scheme, the conveying mechanism further comprises a connecting pipe arranged on the upper surface of the lower jaw, and the connecting pipe communicates the two first separation shells.

[0012] The two sides of the base are respectively inserted with a first conveying pipe, the first conveying pipe communicates with the first liquid discharge pipe, the third conveying pipe communicates with the second liquid discharge pipe, and the upper surfaces of the second conveying pipe, the third conveying pipe and the auxiliary pipe are respectively provided with shunt holes.

[0013] In a preferred scheme, the safety separation mechanism comprises a middle ring arranged at one end of the first separation shell and the second separation shell, one side of the middle ring is provided with a separation cylinder, and the inner walls of one end of the second conveying pipe and the third conveying pipe are respectively provided with an elastic ring and a supporting ring.

[0014] One end of the elastic ring and the supporting ring is provided with an elastic cylinder, and the other end of the elastic cylinder is fixedly connected with the middle ring.

[0015] As can be seen from the above, the automatic liquid supplementing type intelligent mask based on micro-current has the following technical effects.

[0016] Firstly, the copper wire conducts pulse current to the main silver wire layer and the auxiliary silver wire layer, and the conductive ends on the plurality of conductive sheets are electrified, the current is conducted to the plurality of electrodes through the conductive sheets, and since the electrodes are designed in pairs, micro-current is formed between two electrodes, the skin is stimulated to improve the absorption speed of the essence, and the effect of accelerating the absorption of the essence by the skin is achieved.

[0017] Secondly, the shell is inserted above the base, the clamping block is inserted into the clamping groove, and the clamping groove is clamped on the edge of the base, so that the base and the shell are connected together, and the front mask is difficult to separate before use. The micro pump is started to draw the essence liquid in the liquid outlet tank through the liquid suction pipe and the shunt pipe, and the essence liquid is discharged into the third conveying pipe and the auxiliary pipe through the first liquid discharge pipe and the second liquid discharge pipe. After the third conveying pipe and the auxiliary pipe are filled with essence liquid, the third conveying pipe and the auxiliary pipe are stretched, so as to separate the face mask body, the face and the chin, and the user can paste the face mask body on the face, which is convenient for expanding the face mask.

[0018] Thirdly, if the user's cheeks or lips have skin inflammation and wounds before pasting the mask, in order to avoid the inflammation from being aggravated or the wound from being infected, the second quick release piece or the first quick release piece is pulled, and due to the design of the plurality of first separation openings and the plurality of second separation openings, the face and the chin are separated from the mask body along the positions of the first separation opening and the first separation shell, so as to tear the face or the chin from the mask body, which avoids the inflammation from being aggravated or the wound from being infected.

[0019] Fourthly, due to the design of the intermediate ring, when the face and the chin are torn from the mask body, the second separation shell and the intermediate ring are separated, the intermediate ring pulls the elastic ring and the supporting ring through the elastic cylinder, the edge of the elastic ring is deformed, one end of the third conveying pipe and the second conveying pipe is blocked, so that the essence liquid in the third conveying pipe and the second conveying pipe cannot flow out, the intermediate ring is separated from the separation cylinder by continuing to pull the separation cylinder, the intermediate ring and the elastic cylinder are left at one end of the third conveying pipe, so that the face and the chin are separated, one end of the third conveying pipe and the second conveying pipe is blocked, and the essence liquid is prevented from flowing out, which saves the essence liquid. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 The shaft measurement structure diagram is provided for the present application.

[0021] Figure 2 The section structure diagram is provided for the present application.

[0022] Figure 3 The local structure diagram is provided for the present application.

[0023] Figure 4 The internal structure diagram is provided for the present application.

[0024] Figure 5 The base and shell separation structure diagram is provided for the present application.

[0025] Figure 6 The Figure 5 The A point enlargement structure diagram is provided for the present application.

[0026] Figure 7 The second liquid discharge pipe structure diagram provided by the present application.

[0027] Figure 8 The second liquid discharge pipe and the second separation shell separation structure diagram provided by the present application.

[0028] Figure 9 The main silver wire layer structure diagram provided by the present application.

[0029] Figure 10 The electrode structure diagram provided by the present application.

[0030] In the figure: 1, mask main body; 2, base; 3, shell; 4, first conveying pipe; 5, eye part; 6, face part; 7, second conveying pipe; 8, lower jaw part; 9, mouth part; 10, nose part; 11, third conveying pipe; 12, flexible electronic sensor; 13, wire; 14, auxiliary pipe; 15, first separation port; 16, first separation shell; 17, second separation port; 18, first quick release piece; 19, second separation shell; 20, second quick release piece; 21, liquid injection pipe; 22, liquid discharge tank; 23, micro pump; 24, control board; 25, liquid suction pipe; 26, first conductive piece; 27, conductive block; 28, second conductive piece; 29, clamping block; 30, clamping groove; 31, mounting end; 32, electromagnetic valve; 33, shunt pipe; 34, first liquid discharge pipe; 35, second liquid discharge pipe; 36, separation cylinder; 37, elastic cylinder; 38, elastic ring; 39, supporting ring; 40, intermediate ring; 41, main silver wire layer; 42, auxiliary silver wire layer; 43, current piece; 44, conductive piece; 45, conductive end; 46, liquid immersion layer; 47, electrode. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all embodiments.

[0032] Reference Figure 1 -- Figure 10 A micro-current-based automatic liquid supplementing type intelligent mask, comprising a mask main body 1, a nose part 10 is arranged at the center position of the upper surface of the mask main body 1, two eye parts 5 are arranged above the nose part 10 on the upper surface of the mask main body 1, and a mouth part 9 is arranged at the bottom of the nose part 10 on the upper surface of the mask main body 1. A micro-current mechanism is mounted on the lower surface of the mask main body 1. The upper surface of the mask body 1 is provided with an adjusting mechanism near the nose part 10, which includes two face parts 6 and chin parts 8. By separating the face parts 6 or chin parts 8 from the mask body 1, the lower surface of the face parts 6 or chin parts 8 is exposed to the air, avoiding skin inflammation and contact with the mask. The materials of the mask body 1, face parts 6 and chin parts 8 are pure cotton, silk, polyester and regenerated non-woven fabric, etc. The upper surface of the mask body 1 is provided with a detection mechanism above the eye part 5, which includes a base 2, a shell 3 and a plurality of flexible electronic sensors 12. The base 2 is used to quickly install the shell 3. The inside of the shell 3 is fixedly connected with a liquid outlet box 22. The inside of the liquid outlet box 22 is provided with essence liquid. The plurality of flexible electronic sensors 12 are used to detect the skin state. The micro-current mechanism includes a main silver wire layer 41 provided on the lower surface of the mask body 1. One end of the main silver wire layer 41 is provided with an auxiliary silver wire layer 42. The two ends of the main silver wire layer 41 and the auxiliary silver wire layer 42 are respectively provided with a plurality of current sheets 43. The upper surface of the current sheet 43 is provided with two conductive sheets 44. One end of the conductive sheet 44 is provided with a conductive end 45. The other end of the conductive sheet 44 is provided with a plurality of electrodes 47. The upper surface of the conductive sheet 44 is provided with a liquid immersion layer 46. The edge of the base 2 is provided with a conveying mechanism, which includes a second conveying pipe 7 and a third conveying pipe 11. One end of the third conveying pipe 11 is provided with a second separation shell 19. One end of the second conveying pipe 7 is provided with a first separation shell 16. The second conveying pipe 7 and the third conveying pipe 11 are used to convey the essence liquid. One end of the second conveying pipe 7 and the third conveying pipe 11 is provided with a safety separation mechanism. The upper surface of the face part 6 is provided with an auxiliary pipe 14. The second conveying pipe 7 and the third conveying pipe 11 are communicated.

[0033] The adjusting mechanism further includes a second quick release sheet 20 provided at one end of the face part 6. The edge of the face part 6 is provided with a plurality of first separation openings 15. The edge of the chin part 8 is provided with a plurality of second separation openings 17. One end of the chin part 8 is provided with two first quick release sheets 18.

[0034] When there is skin inflammation or wound on the cheeks and lips of the user, in order to avoid the inflammation from being aggravated or the wound from being infected, the face part 6 or the chin part 8 is pulled off from the mask body 1 by pulling the second quick release sheet 20 or the first quick release sheet 18.

[0035] In the present embodiment, if the user has skin inflammation and wounds on both cheeks or lips before the mask is applied, in order to avoid the inflammation from getting worse or the wounds from being infected, by pulling the second quick-release piece 20 or the first quick-release piece 18, due to the design of the plurality of first separation openings 15 and the plurality of second separation openings 17, the face 6 and the chin 8 are separated from the mask body 1 along the positions of the first separation openings 15 and the first separation shells 16, respectively, so as to tear the face 6 or the chin 8 from the mask body 1, thereby achieving the effect of avoiding the inflammation from getting worse or the wounds from being infected.

[0036] With reference to Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6 In a preferred embodiment, the detection mechanism further comprises two clamping grooves 30 arranged at the edges of the base 2, the upper surface of the base 2 is provided with a first conductive sheet 26 and a second conductive sheet 28, the bottom of the shell 3 is provided with a conductive block 27, the center of the upper surface of the base 2 is provided with a mounting end 31, the top of the mounting end 31 is inserted with a first drainage pipe 34 and a second drainage pipe 35, and the bottom of the shell 3 is provided with two clamping blocks 29.

[0037] The inside of the shell 3 is provided with a micro pump 23, one side of the micro pump 23 is inserted with a liquid suction pipe 25, one end of the liquid suction pipe 25 extends into the inside of the liquid outlet tank 22, the inside top of the shell 3 is provided with a control panel 24, one side of the liquid outlet tank 22 is inserted with a liquid injection pipe 21, the bottom of the micro pump 23 is inserted with a shunt pipe 33, the bottom of the shunt pipe 33 is provided with two liquid outlets, and the two sides of the base 2 are respectively inserted with wires 13, which are respectively electrically connected with the first conductive sheet 26, the second conductive sheet 28 and the plurality of flexible electronic sensors 12.

[0038] The liquid outlets are respectively provided with electromagnetic valves 32, the bottom of the shell 3 is provided with a liquid outlet hole and a liquid outlet groove, one of the liquid outlets communicates with the liquid outlet hole, and the other liquid outlet communicates with the liquid outlet groove, the shell 3 and the base 2 are in contact, the second drainage pipe 35 is inserted into the inside of the liquid outlet hole, and the first drainage pipe 34 is inserted into the inside of the liquid outlet groove.

[0039] In the present embodiment, the inside of the liquid outlet tank 22 is injected with essence liquid through the liquid injection pipe 21, the shell 3 is inserted above the base 2, the clamping blocks 29 are inserted into the clamping grooves 30, and the shell 3 is rotated to make the clamping grooves 30 clamped at the edges of the base 2, so as to connect the base 2 and the shell 3 together, and the mask is difficult to be separated before use.

[0040] Furthermore, the micro pump 23 is activated to draw the essence inside the liquid tank 22 through the suction tube 25 and the diversion tube 33, respectively. The essence is then discharged into the third delivery tube 11 and the auxiliary tube 14 through the first drainage tube 34 and the second drainage tube 35, respectively. After the third delivery tube 11 and the auxiliary tube 14 are filled with essence, the third delivery tube 11 and the auxiliary tube 14 are straightened, thereby opening up the mask body 1, the face 6 and the jaw 8, making it convenient for the user to apply the mask body 1 to the face, thus achieving the effect of making it easy to unfold the mask.

[0041] Notably, the control board 24 is equipped with a flexible electronic sensor 12 to control the automatic operation of the micro pump 23, and the control board 24 has a built-in bioimpedance chip to detect skin impedance in real time and automatically adjust the output current (50-200μA) (this is prior art).

[0042] It is also necessary to explain that the main silver wire layer 41 is electrically connected to the conductor 13, and the conductor 13 contains multiple copper wires.

[0043] Furthermore, pulsed current is conducted to the main silver wire layer 41 and the auxiliary silver wire layer 42 through copper wires. By energizing the conductive ends 45 on multiple conductive sheets 44, the current is conducted to multiple electrodes 47 through the conductive sheets 44. Since the electrodes 47 are designed in pairs, microcurrents are formed between each pair of electrodes 47, which stimulates the skin to increase the absorption speed of the essence, thus accelerating the absorption of the essence by the skin.

[0044] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4 In a preferred embodiment, the conveying mechanism further includes a connecting pipe disposed on the upper surface of the lower jaw 8, the connecting pipe connecting the two first separation shells 16 together.

[0045] The base 2 has a first delivery pipe 4 inserted into each side. The first delivery pipe 4 is connected to the first drain pipe 34. The third delivery pipe 11 is connected to the second drain pipe 35. The upper surfaces of the second delivery pipe 7, the third delivery pipe 11 and the auxiliary pipe 14 are respectively provided with diversion holes.

[0046] In this embodiment, multiple flexible electronic sensors 12 detect data such as skin moisture content and sebum secretion at different locations. The algorithm analyzes the skin condition (such as dry, oily, or sensitive skin), and the control board 24 controls the opening and closing of two solenoid valves 32, thereby controlling the amount of essence entering the first drain pipe 34 and the second drain pipe 35. This precisely controls the flow of the essence, making the moisture content of the entire facial mask change evenly, thus achieving the effect of regulating the moisture content of the mask.

[0047] Reference Figure 1 , Figure 2 ,Figure 7 and Figure 8 In a preferred embodiment, the safety separation mechanism includes an intermediate ring 40 disposed at one end of the first separation shell 16 and the second separation shell 19, a separation cylinder 36 disposed on one side of the intermediate ring 40, and an elastic ring 38 and a support ring 39 respectively disposed on the inner wall of one end of the second conveying pipe 7 and the third conveying pipe 11.

[0048] One end of the elastic ring 38 and the support ring 39 is provided with an elastic cylinder 37, and the other end of the elastic cylinder 37 is fixedly connected to the intermediate ring 40.

[0049] In this embodiment, due to the design of the intermediate ring 40, when the face 6 and jaw 8 are torn off from the mask body 1, the second separation shell 19 and the intermediate ring 40 separate. The intermediate ring 40 pulls the elastic ring 38 and the support ring 39 through the elastic cylinder 37, causing the edge of the elastic ring 38 to deform and block one end of the third delivery tube 11 and the second delivery tube 7, thereby preventing the essence inside the third delivery tube 11 and the second delivery tube 7 from flowing out. The separation cylinder 36 is pulled further to separate the intermediate ring 40 from the separation cylinder 36. The intermediate ring 40 and the elastic cylinder 37 remain at one end of the third delivery tube 11, thereby separating the face 6 and the jaw 8, and blocking one end of the third delivery tube 11 and the second delivery tube 7, preventing the essence from flowing out and achieving the effect of saving essence.

[0050] Working principle: In use, the essence is injected into the dispensing tank 22 through the injection tube 21. The outer shell 3 is inserted above the base 2. After the locking block 29 is inserted into the locking slot 30, the outer shell 3 is rotated (the outer shell 3 and its internal structure are reusable) so that the locking slot 30 is locked onto the edge of the base 2, connecting the base 2 and the outer shell 3 together. Before use, the mask will stick together (the base 2 and the mask are for single use) and are difficult to separate. The micro pump 23 is activated to draw the essence inside the dispensing tank 22 out through the suction tube 25 and the diversion tube 33, respectively. The essence is then discharged into the third delivery tube 11 and the auxiliary tube 14 through the first drainage tube 34 and the second drainage tube 35, respectively. After the mask body is filled with essence, the third delivery tube 11 and the auxiliary tube 14 straighten, thereby opening up the mask body 1, the face 6, and the jawline 8, making it easier for the user to apply the mask body 1 to the face. This facilitates the unfolding of the mask. Multiple flexible electronic sensors 12 detect changes in skin moisture content at different locations, controlling the opening and closing of two solenoid valves 32 to control the amount of essence entering the first drain tube 34 and the second drain tube 35. This precisely controls the flow of essence, ensuring uniform moisture content across the entire face mask. A pulsed current is conducted to the main silver wire layer 41 and the auxiliary silver wire layer 42 via copper wires. By energizing the conductive terminals 45 on multiple conductive sheets 44, the current flows through the conductive sheets. The current is conducted to multiple electrodes 47. Due to the paired design of the electrodes 47, a microcurrent is formed between each pair of electrodes 47, stimulating the skin to increase the absorption rate of the essence, thus accelerating the absorption of the essence. Before applying the mask, if the user has skin inflammation or wounds on their cheeks or lips, to avoid aggravating the inflammation or causing infection, by pulling the second quick-release tab 20 or the first quick-release tab 18, the face 6 and jaw 8 are separated from the mask body 1 along the positions of the first separation tab 15 and the first separation shell 16, respectively, thus peeling the face 6 or jaw 8 off the mask body 1, preventing aggravation of inflammation or infection. Due to the design of the intermediate ring 40, when the face 6 and jaw 8 are torn off from the mask body 1, the second separation shell 19 and the intermediate ring 40 separate. The intermediate ring 40 pulls the elastic ring 38 and the support ring 39 through the elastic cylinder 37, causing the edge of the elastic ring 38 to deform and block one end of the third delivery tube 11 and the second delivery tube 7, thus preventing the essence inside the third delivery tube 11 and the second delivery tube 7 from flowing out. The separation cylinder 36 is then pulled to separate the intermediate ring 40 from the separation cylinder 36. The intermediate ring 40 and the elastic cylinder 37 remain at one end of the third delivery tube 11, thus separating the face 6 and the jaw 8, while blocking one end of the third delivery tube 11 and the second delivery tube 7, preventing the essence from flowing out and achieving the effect of saving essence.

[0051] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.

Claims

1. A microcurrent-based automatic liquid replenishment smart face mask, comprising a face mask body (1), characterized in that, The mask body (1) has a nose (10) at the center of its upper surface, two eyes (5) above the nose (10) on its upper surface, and a mouth (9) at the bottom of the nose (10) on its upper surface. A microcurrent mechanism is installed on the lower surface of the mask body (1); An adjustment mechanism is installed on the upper surface of the mask body (1) near the nose (10). The adjustment mechanism includes two face parts (6) and a jaw part (8). By separating the face part (6) or jaw part (8) from the mask body (1), the skin on the lower surface of the face part (6) or jaw part (8) is exposed to the air, thus avoiding skin inflammation from contacting the mask. The upper surface of the mask body (1) is equipped with a detection mechanism above the eyes (5). The detection mechanism includes a base (2), a shell (3) and multiple flexible electronic sensors (12). The inside of the shell (3) is fixedly connected to a liquid outlet tank (22), and the inside of the liquid outlet tank (22) is filled with essence. The base (2) is equipped with a conveying mechanism on its edge. The conveying mechanism includes a second conveying pipe (7) and a third conveying pipe (11). A second separation shell (19) is provided at one end of the third conveying pipe (11), and a first separation shell (16) is provided at one end of the second conveying pipe (7). The second conveying pipe (7) and the third conveying pipe (11) are used to convey the essence. A safety separation mechanism is installed at one end of the second delivery pipe (7) and the third delivery pipe (11), and an auxiliary pipe (14) is provided on the upper surface of the face (6). The second delivery pipe (7) is connected to the third delivery pipe (11).

2. The intelligent facial mask based on microcurrent for automatic liquid replenishment according to claim 1, characterized in that, The microcurrent mechanism includes a main silver wire layer (41) disposed on the lower surface of the mask body (1), an auxiliary silver wire layer (42) disposed at one end of the main silver wire layer (41), a plurality of current plates (43) disposed at both ends of the main silver wire layer (41) and the auxiliary silver wire layer (42), two conductive plates (44) disposed on the upper surface of the current plate (43), a conductive end (45) disposed at one end of the conductive plate (44), a plurality of electrodes (47) disposed at the other end of the conductive plate (44), and an immersion layer (46) disposed on the upper surface of the conductive plate (44). The adjustment mechanism also includes a second quick-release tab (20) disposed at one end of the face (6), a plurality of first separation ports (15) disposed at the edge of the face (6), a plurality of second separation ports (17) disposed at the edge of the jaw (8), and two first quick-release tabs (18) disposed at one end of the jaw (8).

3. The microcurrent-based automatic liquid replenishment smart mask according to claim 2, characterized in that, When the user has skin inflammation or wounds on their cheeks and lips, in order to avoid aggravating the inflammation or wound infection, the face (6) or jaw (8) can be peeled off from the mask body (1) by pulling the second quick-release tab (20) or the first quick-release tab (18).

4. The microcurrent-based automatic liquid replenishment smart mask according to claim 3, characterized in that, The detection mechanism also includes two slots (30) located on the edge of the base (2). The upper surface of the base (2) is provided with a first conductive sheet (26) and a second conductive sheet (28). The bottom of the outer shell (3) is provided with a conductive block (27). The center of the upper surface of the base (2) is provided with an installation end (31). The top of the installation end (31) is connected to a first drain pipe (34) and a second drain pipe (35). The bottom edge of the outer shell (3) is provided with two slots (29).

5. The microcurrent-based automatic liquid replenishment smart mask according to claim 4, characterized in that, The shell (3) is equipped with a micro pump (23). A suction tube (25) is inserted into one side of the micro pump (23). One end of the suction tube (25) extends into the interior of the liquid outlet tank (22). A control board (24) is installed at the top inside the shell (3). A liquid injection tube (21) is inserted into one side of the liquid outlet tank (22). A diversion tube (33) is inserted into the bottom of the micro pump (23). Two liquid outlets are provided at the bottom of the diversion tube (33). Wires (13) are inserted into both sides of the base (2). The wires (13) are electrically connected to the first conductive sheet (26), the second conductive sheet (28), and multiple flexible electronic sensors (12).

6. The intelligent facial mask based on microcurrent for automatic liquid replenishment according to claim 5, characterized in that, The liquid outlets are respectively equipped with solenoid valves (32), the bottom of the outer shell (3) is provided with a liquid outlet hole and a liquid outlet groove, one liquid outlet is connected to the liquid outlet hole, the other liquid outlet is connected to the liquid outlet groove, the outer shell (3) and the base (2) are in contact, the second drain pipe (35) is inserted into the liquid outlet hole, and the first drain pipe (34) is inserted into the liquid outlet groove.

7. The intelligent facial mask based on microcurrent for automatic fluid replenishment according to claim 6, characterized in that, The conveying mechanism also includes a connecting pipe disposed on the upper surface of the lower jaw (8), which connects the two first separation shells (16) together.

8. The intelligent facial mask based on microcurrent for automatic liquid replenishment according to claim 7, characterized in that, The base (2) has a first delivery pipe (4) inserted into each side. The first delivery pipe (4) is connected to the first drain pipe (34). The third delivery pipe (11) is connected to the second drain pipe (35). The upper surfaces of the second delivery pipe (7), the third delivery pipe (11) and the auxiliary pipe (14) are respectively provided with diversion holes.

9. A microcurrent-based automatic liquid replenishment smart facial mask according to claim 8, characterized in that, The safety separation mechanism includes an intermediate ring (40) disposed at one end of the first separation shell (16) and the second separation shell (19), a separation cylinder (36) disposed on one side of the intermediate ring (40), and an elastic ring (38) and a support ring (39) respectively disposed on the inner wall of one end of the second conveying pipe (7) and the third conveying pipe (11).

10. A microcurrent-based automatic liquid replenishment smart facial mask according to claim 9, characterized in that, One end of the elastic ring (38) and the support ring (39) is provided with an elastic cylinder (37), and the other end of the elastic cylinder (37) is fixedly connected to the intermediate ring (40).